Kandamali, D. F., Cao, X., Tian, M., Jin, Z., Dong, H., & Yu, K. (2022). Machine learning methods for identification and classification of
events in ϕ-OTDR systems: a review. Applied Optics, 61(11), 2975. https://doi.org/10.1364/ao.444811
Abstract:
The phase sensitive optical time-domain reflectometer (ϕ-OTDR), or in some applications called distributed
acoustic sensing (DAS), has been a popularly used technology for long-distance monitoring of vibrational signals in recent years. Since ϕ-OTDR systems usually operate in complicated and dynamic environments, there have been multiple intrusion event signals and also numerous noise interferences, which have been a major stumbling block toward the system’s efficiency and effectiveness. Many studies have proposed different techniques to mitigate this problem mainly in ϕ-OTDR setup upgrades and improvements in data processing techniques. Most recently, machine learning methods for event classifications in order to help identify and categorize intrusion events have become the heated spot. In this paper, we provide a review of recent technologies from conventional machine learning algorithms to deep neural networks for event classifications aimed at increasing the recognition/classification accuracy and reducing nuisance alarm rates (NARs) in ϕ-OTDR systems. We present a comparative analysis of the current classification methods and then evaluate their performance in terms of classification accuracy, NAR, precision, recall, identification time, and other parameters.
License type:
Attribution 4.0 International (CC BY 4.0)
Funding Info:
This research / project is supported by the National Research Foundation - Central GAP Fund
Grant Reference no. : NRF2020NRF-CG001-040
Overseas Funding:-
1) Fundamental Research Funds for the Central Universities
(2020JBM024)
2) National Natural Science Foundation of China (61805008);